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Proton induced fission of 232Th at intermediate energies

К. Б. ГикалFlerov Laboratory of Nuclear Reactions, JINR, Dubna, 141980, RussiaЭ. М. КозулинFlerov Laboratory of Nuclear Reactions, JINR, Dubna, 141980, RussiaA. A. BogachevFlerov Laboratory of Nuclear Reactions, JINR, Dubna, 141980, RussiaN. BurtebaevInstitute of Nuclear Physics of Ministry of Energy of the Republic of Kazakhstan, Almaty, 050032, Republic of KazakhstanA. V. EdomskiyInstitute of Nuclear Physics of Ministry of Energy of the Republic of Kazakhstan, Almaty, 050032, Republic of KazakhstanI. M. ItkisFlerov Laboratory of Nuclear Reactions, JINR, Dubna, 141980, RussiaМ. Г. ИткисFlerov Laboratory of Nuclear Reactions, JINR, Dubna, 141980, RussiaG. N. KnyazhevFlerov Laboratory of Nuclear Reactions, JINR, Dubna, 141980, RussiaK. V. КovalchukInstitute of Nuclear Physics of Ministry of Energy of the Republic of Kazakhstan, Almaty, 050032, Republic of KazakhstanT. N. KvochkinaInstitute of Nuclear Physics of Ministry of Energy of the Republic of Kazakhstan, Almaty, 050032, Republic of KazakhstanE. PiaseckiHeavy Ion Laboratory of Warsaw University, Warsaw, PolandV. A. RubchenyaDepartment of Physics, University of Jyväskylä, FIN-40351, Jyväskylä, FinlandS. K. SahievInstitute of Nuclear Physics of Ministry of Energy of the Republic of Kazakhstan, Almaty, 050032, Republic of KazakhstanW. H. TrzaskaDepartment of Physics, University of Jyväskylä, FIN-40351, Jyväskylä, FinlandE. VardaciINFN Napoli, Dipartimento di Scienze Fisiche dell’Università di Napoli, Napoli, Italy
2016en
ABI

Аннотация

The mass-energy distributions and cross sections of proton-induced fission of 232Th have been measured at the proton energies of 7, 10, 13, 20, 40, and 55 MeV. Experiments were carried out at the proton beam of the K-130 cyclotron of the JYFL Accelerator Laboratory of the University of Jyväskylä and U-150m cyclotron of the Institute of Nuclear Physics, Ministry of Energy of the Republic of Kazakhstan. The yields of fission fragments in the mass range A = 60–170 a.m.u. have been measured up to the level of 10−4%. The three humped shape of the mass distribution up has been observed at higher proton energies. The contribution of the symmetric component grows up with increasing proton incident energy; although even at 55 MeV of proton energy the shoulders in the mass energy distribution clearly indicate the asymmetric fission peaks. Evolution of shell structure was observed in the fission fragment mass distributions even at high excitation energy.

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